首页> 外文期刊>Archives of Physical Medicine and Rehabilitation >Kinematics in the terminal swing phase of unilateral transfemoral amputees: microprocessor-controlled versus swing-phase control prosthetic knees.
【24h】

Kinematics in the terminal swing phase of unilateral transfemoral amputees: microprocessor-controlled versus swing-phase control prosthetic knees.

机译:单侧经股截肢者末端摆动阶段的运动学:微处理器控制假体膝盖与摆动阶段控制假肢。

获取原文
获取原文并翻译 | 示例
       

摘要

OBJECTIVES: To analyze the spatiotemporal parameters in the terminal swing phase of the prosthetic limb in unilateral transfemoral amputees (TFAs) compared with a group of asymptomatic subjects, and to identify a latency period (LP) in the TFA between the full extension of the prosthetic knee and the initial ground contact of the ipsilateral foot. To study the correlation between the LP and the duration of the swing phase. To evaluate the influence of the type of knee, the time since amputation, and the amputation level on the latency period. DESIGN: Three-dimensional gait analysis with an optoelectronic device. SETTING: Gait analysis laboratory of a re-education and functional rehabilitation service. PARTICIPANTS: TFA (n=29) and able-bodied (n=15) subjects. INTERVENTIONS: Not applicable. MAIN OUTCOME MEASURES: Spatiotemporal and kinematics gait parameters. RESULTS: The swing phase and the LP of the prosthetic limb, associated with a consequently longer single-limb stance phase in the intact limb, were significantly longer than those measured in the intact limbs of these subjects, as well as those measured on both lower limbs of the able-bodied subjects (P<.05). There is a positive correlation (P<.05; r(2)=.58 between the LP and the swing phase on the TFA's prosthetic side. The LP measured in the prosthetic limb of TFA with a swing-phase control prosthetic knee is significantly greater than in those using the microprocessor-controlled prosthetic knee (P<.05). CONCLUSIONS: Of negligible duration in able-bodied subjects and in the intact limb of TFA, the LP is significantly greater in the prosthetic limb. It can explain the lengthened swing phase on the prosthetic side of those subjects. The use of a microprocessor-controlled prosthetic knee allows the LP to be reduced. This LP appears to be necessary to insure the stability of the prosthetic knee. We suggest calling this time "confidence time."
机译:目的:与一组无症状受试者比较,分析单侧经股截肢者(TFA)假肢肢体末端摆动阶段的时空参数,并确定假肢完全伸展之间的TFA潜伏期(LP)膝盖和同侧脚的初始地面接触。研究LP和摆动阶段持续时间之间的相关性。评估膝盖类型,截肢以来的时间以及截肢水平对潜伏期的影响。设计:使用光电设备进行三维步态分析。地点:步态分析实验室,提供再教育和功能康复服务。参加者:TFA(n = 29)和身体健全(n = 15)的受试者。干预措施:不适用。主要观察指标:时空和运动学步态参数。结果:假肢的摆动阶段和LP与相应的完整肢体更长的单肢姿势阶段相关,显着长于这些受试者完整肢体的测量值,以及在两个较低肢体测量的值肢体强壮的受试者(P <.05)。 TFA假体一侧的LP与摆动阶段之间存在正相关(P <.05; r(2)=。58。)在TFA假肢中,以摆动阶段控制的假肢膝关节测得的LP显着结论:在身体健全的受试者和完整的TFA肢体中,持续时间可以忽略不计,假肢的LP明显更大。延长假肢一侧的挥杆阶段。使用微处理器控制的假肢可以减少LP。为了确保假肢的稳定性,该LP似乎是必要的。我们建议将这段时间称为“置信时间” 。”

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号